首页 | 本学科首页   官方微博 | 高级检索  
     检索      

植物顶端有限生长相关基因与基因编辑育种研究进展
引用本文:郭品品,任钢,李重,曾少华,德塔娜,王瑛.植物顶端有限生长相关基因与基因编辑育种研究进展[J].热带作物学报,2019,40(10):2016-2021.
作者姓名:郭品品  任钢  李重  曾少华  德塔娜  王瑛
作者单位:1. 中国科学院华南植物园/中国科学院华南农业植物分子分析与遗传改良重点实验室/广东省应用植物学重点实验室,广东广州 5106502. 青海省海西州农业科学研究所,青海德令哈 8170003. 宁夏百瑞源枸杞股份有限公司,宁夏银川 750200
基金项目:宁夏农业综合开发科技项目(NTKJ2018-07);海西州“基层科普行动计划”项目
摘    要:随着劳动力成本的增加,农作物的采收将逐步从人工采收过渡到机械采收,因此培育紧凑、矮化、果实成熟集中、耐密植、适宜机械化操作的新品种已成为作物遗传改良的主要目标。本文重点综述了不同物种FT及其同源基因对植物成花的调控功能,植株顶端的无限生长和有限生长的控制基因及其功能研究进展,以及通过基因编辑促进顶端成花进而导致植株顶端由无限营养生长转变为有限生殖生长,进一步介绍了通过多基因同时编辑的方法推动植物株型改变并培育新品种的成功案例。植株顶端成花和有限生长的特性可以促进果实的统一成熟,为适宜机械化采收的株型育种提供理论支持和实践指导。

关 键 词:株型  开花  有限生长  基因编辑  
收稿时间:2019-07-30

Progress of Determinate Growth Genes and Gene Editing Breeding
GUO Pinpin,REN Gang,LI Zhong,ZENG Shaohua,DE Tana,WANG Ying.Progress of Determinate Growth Genes and Gene Editing Breeding[J].Chinese Journal of Tropical Crops,2019,40(10):2016-2021.
Authors:GUO Pinpin  REN Gang  LI Zhong  ZENG Shaohua  DE Tana  WANG Ying
Institution:1. South China Botanical Garden, Chinese Academy of Sciences / Key Laboratory of South China Agricultural Plant Molecular Analysis and Genetic Improvement, Chinese Academy of Sciences / Guangdong Provincial Key Laboratory of Applied Botany, Guangzhou, Guangdong 510650, China2. Haixi Institute of Agricultural Science, Delingha, Qinghai 817000, China3. Bryel Goji Stock Co., Ltd., Yinchuan, Ningxia 750200, China
Abstract:With the increase of labor cost, there will be a gradually transition for the harvesting of fruits and vegetables from manual harvesting to mechanical harvesting. Therefore, developing new compact and mechanical harvest plant varieties with synchronized ripening period has become the main target of genetic improvement. This review summarized the flower development related genes, especially FT and homologous genes controlling the indeterminate and determinate growth at the top of the main stem of plants, and the successful breeding model of promoting the apical flower formation using the CRISPR/CAS9 gene editing system, which leads to the transformation of the top of the main stem into flower development and stops continuing to grow. In addition, gene editing of multiple genes relating to plant apical structure and fruit characters were successfully used for new cultivar development. Apical flower and determinate growth can promote the synchronized fruit ripening and faciliate mechanical harvest, which would provide a theoretical and practical guidance for the future breeding alternating plant structure or plant type.
Keywords:plant type  flowering time  determinate growth  gene editing  
本文献已被 CNKI 等数据库收录!
点击此处可从《热带作物学报》浏览原始摘要信息
点击此处可从《热带作物学报》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号